Genetic Variability for Iron, Zinc, and Protein Content in a Mediterranean Lentil Collection Grown under No-Till Conditions: Towards Biofortification under Conservation Agriculture

Author:

Aboutayeb Rachid1,Baidani Aziz2,Zeroual Abdelmonim23ORCID,Benbrahim Nadia4,Aissaoui Abdellah El5ORCID,Ouhemi Hanane6,Houasli Chafika3ORCID,Mazzucotelli Elisabetta7ORCID,Gadaleta Agata8ORCID,Idrissi Omar3

Affiliation:

1. Soil, Plant and Water Laboratory, Regional Center of Agricultural Research of Settat, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, Rabat 10090, Morocco

2. Laboratory of Agrifood and Health, Faculty of Sciences and Techniques, Hassan First University of Settat, BP 577, Settat 26000, Morocco

3. Laboratory of Food Legumes Breeding, Regional Center of Agricultural Research of Settat, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, Rabat 10090, Morocco

4. Regional Center of Agricultural Research of Rabat, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, Rabat 10090, Morocco

5. Laboratory of Engineering and Agricultural Machinery, Regional Center of Agricultural Research of Settat, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, Rabat 10090, Morocco

6. Laboratory of Agronomy, Regional Center of Agricultural Research of Settat, National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, Rabat 10090, Morocco

7. CREA—Research Centre for Genomics and Bioinformatics, 29017 Fiorenzuola d’Arda, Italy

8. Department of Agricultural and Environmental Science, University of Bari ‘Aldo Moro’, Via G. Amendola 165/A, 70126 Bari, Italy

Abstract

Biofortification is a promising and sustainable way to improve lentil nutritional value. No-till is an eco-friendly agricultural practice for sustainable agricultural production under climate change conditions. The objective of this study was to evaluate the genetic variation of lentil grain quality traits under no-till and conventional tillage systems, and to investigate the significance of tillage and genotype by tillage interaction. A Mediterranean lentil collection of 120 accessions, including landraces, advanced breeding lines, local varieties, and improved varieties was assessed for protein, iron, and zinc genetic variability under no-till and conventional tillage systems. Under no-till, substantial genetic variation for protein (19–32%), iron (17–184 mg/kg), and zinc (9–48 mg/kg) was observed, indicating the possibility of lentil biofortification under conservation agriculture. Significant effects of tillage system and genotype by tillage interaction were observed for protein and iron contents. Furthermore, significant effect of tillage system on zinc content was recorded. No-till yielded slightly higher protein and zinc content than conventional tillage. Overall, the results indicated that shifting lentil production from a conventional tillage system to a no-till system would be of interest to increase lentil nutritional value.

Funder

PRIMA 2019—Section 2

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference53 articles.

1. Jha, A.B., and Warkentin, T.D. (2020). Biofortification of Pulse Crops: Status and Future Perspectives. Plants, 9.

2. Food and Agriculture Organization of the United Nations (2013). The State of Food and Agriculture 2013: Food Systems for Better Nutrition, Food and Agriculture Organization of the United Nations.

3. Global Burden of Maternal and Child Undernutrition and Micronutrient Deficiencies;Ahmed;Ann. Nutr. Metab.,2012

4. Aboutayeb, R. (2003). Mémoire d’Ingénieur d’Etat en Industries Agricoles et Alimentaires, Institut Agronomique et Vétérinaire Hassan II.

5. Pulse Crops for Health;Patterson;Cereal Foods World,2009

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